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首页> 外文期刊>Environmental Science and Pollution Research >Towards understanding groundwater quality using hydrochemical and statistical approaches: case of shallow aquifer of Mahdia-Ksour Essaf (Sahel of Tunisia)
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Towards understanding groundwater quality using hydrochemical and statistical approaches: case of shallow aquifer of Mahdia-Ksour Essaf (Sahel of Tunisia)

机译:利用水化和统计方法了解地下水质量:Mahdia-Ksour Essaf浅含水层的情况(突尼斯Sahel)

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摘要

Understanding the controlling factor of groundwater quality could certainly enhance the promotion of the sustainable development of groundwater resources. In fact, during the last decades, the coastal aquifer of Mahdia-Ksour Essef that belongs to the semi-arid region of Tunisia has been marked by an increase of groundwater extraction for irrigation and water for drinking. Moreover, the water quality shows deterioration due to the septic tanks and intensive agricultural activities especially in the coastal side of the aquifer. This study aimed to (1) assess the water quality using Piper Diagram, Box Plot, ions scatter diagrams, (2) understand the processes of mineralization acquisition in the aquifer, and (3) identify the chemical processes and their spatial distribution in the study area. To solve these objectives, the multivariate statistical analysis such as multiple correspondence analysis and hydrochemical analysis was performed. Accordingly, two types of groundwater are identified through the hydrochemical analysis as Na-Cl and Ca-SO4. According to multiple correspondence analysis, three water groups are determined (G1, G2, and G3). Indeed, the groundwater quality is controlled by the water-rock interactions and affected by the seawater intrusion and agricultural activities. The generated results would be helpful to provide a managing model highlighting the threatened locations. It could be considered as a basis for future monitoring programs that aspire to protect water resources.
机译:了解地下水质量的控制因素肯定会加强促进地下水资源的可持续发展。事实上,在过去十年中,属于突尼斯半干旱地区的Mahdia-Ksour Essef的沿海含水层已经标志着地下水提取灌溉和饮用水的增加。此外,水质显示出由于化粪池和密集的农业活动,特别是在含水层的沿海侧面而导致的恶化。本研究旨在(1)使用Piper图,箱图,离子散点图评估水质,(2)了解含水层中的矿化采集过程,(3)识别研究中的化学过程及其空间分布区域。为了解决这些目的,进行多元统计分析,例如多重对应分析和水化学分析。因此,通过作为Na-Cl和Ca-SO4的水化学分析来鉴定两种类型的地下水。根据多重对应分析,确定三个水基(G1,G2和G3)。实际上,地下水质量由水岩相互作用控制,受海水入侵和农业活动的影响。生成的结果是有助于提供突出显示受威胁位置的管理模型。它可以被视为渴望保护水资源的未来监测计划的基础。

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